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Updated: Apr 18, 2026

One-channel Cell-attached Patch-clamp Recording
Published on: June 9, 2014
Ligand-dependent opening of the multiple AMPA receptor conductance states: a concerted model
Ranjita Dutta-Roy1, Christian Rosenmund2, Stuart J Edelstein3
1Department of Medicine Solna, Karolinska Insitutet, 171 76 Stockholm, Sweden; NWFZ, Charite Universitatsmedizin, 101 17 Berlin, Germany; European Bioinformatics Institute (EMBL-EBI), Wellcome Trust Genome Campus, Hinxton, Cambridgeshire CB10 1SD, UK.
Abstract:
Modulation of the properties of AMPA receptors at the post-synaptic membrane is one of the main suggested mechanisms underlying fast synaptic transmission in the central nervous system of vertebrates. Electrophysiological recordings of single channels stimulated with agonists showed that both recombinant and native AMPA receptors visit multiple conductance states in an agonist concentration dependent manner. We propose an allosteric model of the multiple conductance states based on concerted conformational transitions of the four subunits, as an iris diaphragm. Our model predicts that the thermodynamic behaviour of the conductance states upon full and partial agonist stimulations can be described with increased affinity of receptors as they progress to higher conductance states. The model also predicts the existence of AMPA receptors in non-liganded conductive substates. However, the probability of spontaneous openings decreases with increasing conductances. Finally, we predict that the large conductance states are stabilized within the rise phase of a whole-cell EPSC in glutamatergic hippocampal neurons. Our model provides a mechanistic link between ligand concentration and conductance states that can explain thermodynamic and kinetic features of AMPA receptor gating.
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